...
首页> 外文期刊>The Journal of Experimental Biology >On the role of copepod antennae in the production of hydrodynamic force during hopping
【24h】

On the role of copepod antennae in the production of hydrodynamic force during hopping

机译:关于pe足类触角在跳跃过程中产生水动力的作用

获取原文
获取原文并翻译 | 示例

摘要

We integrate high-resolution experimental observations of a freely hopping copepod with three-dimensional numerical simulations to investigate the role of the copepod antennae in production of hydrodynamic force during hopping. The experimental observations revealed a distinctive asymmetrical deformation of the antennae during the power and return strokes, which lead us to the hypothesis that the antennae are active contributors to the production of propulsive force with kinematics selected in nature in order to maximize net thrust. To examine the validity of this hypothesis we carried out numerical experiments using an anatomically realistic, tethered, virtual copepod, by prescribing two sets of antenna kinematics. In the first set, each antenna moves as a rigid, oar-like structure in a reversible manner, whereas in the second set, the antenna is made to move asymmetrically as a deformable structure as revealed by the experiments. The computed results show that for both cases the antennae are major contributors to the net thrust force during hopping, and the results also clearly demonstrate the significant hydrodynamic benefit in terms of thrust enhancement and drag reduction derived from the biologically realistic, asymmetric antenna motion. This finding is not surprising given the low local Reynolds number environment within which the antenna operates, and points to striking similarities between the copepod antenna motion and ciliary propulsion. Finally, the simulations provide the first glimpse into the complex, highly 3-D structure of copepod wakes.
机译:我们将自由跳跃的hop足类的高分辨率实验观察与三维数值模拟相结合,以研究the足类触角在跳跃过程中产生水动力的作用。实验观察表明,在动力冲程和回程冲程中,天线具有明显的不对称变形,这使我们得出这样的假设:天线是推动推力产生的积极因素,而运动学是自然选择的,以便使净推力最大化。为了检验该假设的有效性,我们通过规定两组天线运动学,使用解剖学上逼真的,系留的虚拟co足动物进行了数值实验。在第一组中,每个天线作为刚性的桨状结构以可逆的方式移动,而在第二组中,如实验所示,使天线作为变形结构不对称地移动。计算结果表明,在两种情况下,天线都是跳跃过程中净推力的主要贡献者,并且结果也清楚地证明了从生物学上逼真的非对称天线运动推力增强和减阻方面的显着水动力优势。考虑到天线在较低的局部雷诺数环境下工作,这一发现不足为奇,并指出了pe足类天线运动与睫状推进之间的惊人相似之处。最后,这些仿真首次使我们了解到了pe足动物尾波的复杂,高度3D结构。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号